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Enhanced Tolerance of Transgenic Potato Plants Over-Expressing Non-specific Lipid Transfer Protein-1 (StnsLTP1) against Multiple Abiotic Stresses

机译:过度表达非特异性脂质转移蛋白-1(StnsLTP1)的转基因马铃薯植物对多种非生物胁迫的耐受性增强

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摘要

Abiotic stresses such as heat, drought, and salinity are major environmental constraints that limit potato (Solanum tuberosum L.) production worldwide. Previously, we found a potential thermo-tolerance gene, named StnsLTP1 from potato using yeast functional screening. Here, we report the functional characterization of StnsLTP1 and its role in multiple abiotic stresses in potato plants. Computational analysis of StnsLTP1 with other plant LTPs showed eight conserved cysteine residues, and four α-helices stabilized by four disulfide bridges. Expression analysis of StnsLTP1 gene showed differential expression under heat, water-deficit and salt stresses. Transgenic potato lines over-expressing StnsLTP1 gene displayed enhanced cell membrane integrity under stress conditions, as indicated by reduced membrane lipid per-oxidation, and hydrogen peroxide content relative to untransformed (UT) control plants. In addition, transgenic lines over-expressing StLTP1 also exhibited increased antioxidant enzyme activity with enhanced accumulation of ascorbates, and up-regulation of stress-related genes including StAPX, StCAT, StSOD, StHsfA3, StHSP70, and StsHSP20 compared with the UT plants. These results suggests that StnsLTP1 transgenic plants acquired improved tolerance to multiple abiotic stresses through enhanced activation of antioxidative defense mechanisms via cyclic scavenging of reactive oxygen species and regulated expression of stress-related genes.
机译:高温,干旱和盐碱化等非生物胁迫是限制全球马铃薯(Solanum tuberosum L.)产量的主要环境限制。以前,我们使用酵母功能筛选从马铃薯中发现了一个潜在的耐热基因,名为StnsLTP1。在这里,我们报告StnsLTP1的功能表征及其在马铃薯植物中多种非生物胁迫中的作用。 StnsLTP1与其他植物LTP的计算分析表明,八个保守的半胱氨酸残基和四个通过两个二硫键稳定的α螺旋。 StnsLTP1基因的表达分析显示在热,缺水和盐胁迫下差异表达。过表达StnsLTP1基因的转基因马铃薯品系在胁迫条件下表现出增强的细胞膜完整性,如膜脂质过氧化作用降低和过氧化氢含量相对于未转化(UT)对照植物所示。此外,与UT植物相比,过表达StLTP1的转基因品系还表现出增加的抗氧化酶活性,抗坏血酸的积累以及抗应激相关基因(包括StAPX,StCAT,StSOD,StHsfA3,StHSP70和StsHSP20)的上调。这些结果表明,StnsLTP1转基因植物通过增强的抗氧防御机制的激活(通过循环清除活性氧和调节应激相关基因的表达),提高了对多种非生物胁迫的耐受性。

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